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Oxylipins as developmental and host–fungal communication signals

机译:磷脂作为发育和宿主-真菌的交流信号

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Pathogenic microbes and their hosts have acquired complex signalling mechanisms to appraise themselves of the environmental milieu in the ongoing battle for survival. Several recent studies have implicated oxylipins as a novel class of host–microbe signalling molecules. Oxylipins represent a vast and diverse family of secondary metabolites that originate from the oxidation or further conversion of polyunsaturated fatty acids. Among the microbial oxylipins, the fungal oxylipins are best characterized and function as hormone-like signals that modulate the timing and balance between asexual and sexual spore development in addition to toxin production. Coupled with other studies that implicate a role for fungal oxylipins in pathogenesis by Aspergillus and Candida spp., these results suggest that host and microbial oxylipins might interfere with the metabolism, perception or signalling processes of each other.
机译:病原微生物及其宿主已经获得了复杂的信号传导机制,可以在正在进行的生存战中评估自身的环境状况。最近的一些研究表明,脂环素是一类新型的宿主微生物信号分子。脂蛋白代表了多种多样的次级代谢产物家族,这些次级代谢产物源自多不饱和脂肪酸的氧化或进一步转化。在微生物脂蛋白中,真菌脂蛋白的特征最为突出,其功能类似于激素,可调节除毒素产生外的无性和有性孢子发育的时间和平衡。结合其他研究表明曲霉菌和念珠菌属中的真菌脂蛋白在发病机理中的作用,这些结果表明宿主和微生物脂蛋白可能相互干扰新陈代谢,感知或信号传导过程。

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